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Radiative flow in a luminous disk

机译:发光盘中的辐射流

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摘要

Radiatively driven flow in a luminous disk is examined in the subrelativistic regime of (v/c)(1), taking account of radiation transfer. The flow is assumed to be vertical, and the gravity and gas pressure are ignored. When internal heating is dropped, for a given optical depth and radiation pressure at the flow base (disk "inside"), where the flow speed is zero, the flow is analytically solved under the appropriate boundary condition at the flow top (disk "surface"), where the optical depth is zero. The loaded mass and terminal speed of the flow are both determined by the initial conditions; the mass-loss rate increases as the initial radiation pressure increases, while the flow terminal speed increases as the initial radiation pressure and the loaded mass decrease. In particular, when heating is ignored, the radiative flux F is constant and the radiation pressure P-0 at the flow base with optical depth tau(0) is bound in the range of 2/3 < cP(0)/F < 2/3 + tau(0). In this case, at the limit of cP(0)/F = 2/3 + tau(0), the loaded mass diverges and the flow terminal speed becomes zero, while, at the limit of cP(0)/F = 2/3, the loaded mass becomes zero and the terminal speed approaches (3/8)c, which is the terminal speed above the luminous flat disk under an approximation of the order of (v/c)(1). We also examine the case where heating exists, and find that the flow properties are qualitatively similar to the case without heating.
机译:考虑到辐射传输,在(v / c)(1)的相对论状态下检查了发光盘中的辐射驱动流。假定流动为垂直,忽略重力和气压。当内部加热下降时,对于给定的光学深度和流基(圆盘“内部”)处的辐射压力(流速为零),在适当的边界条件下,在流动顶部(圆盘“表面”)解析地解析了流动”),其中光学深度为零。流的负载质量和最终速度都由初始条件确定;质量损失率随着初始辐射压力的增加而增加,而流动终端速度随着初始辐射压力和负载质量的减少而增加。特别地,当忽略加热时,辐射通量F恒定,并且光学深度为tau(0)的流基处的辐射压力P-0限制在2/3

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